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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Short Communication Resolving the Beaufort Sea High using synoptic climatological methods
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Short Communication Resolving the Beaufort Sea High using synoptic climatological methods

机译:短暂的沟通使用天气学方法解决波弗特海高

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摘要

Melt season frequencies of the Beaufort Sea High (BSH) have a profound effect on western Arctic climate, making the interannual spatial and temporal monitoring of this polar anticyclone important. This manuscript presents two automated synoptic climatological analyses using a two-step cluster procedure to classify daily mean sea level pressure (MSLP) over 180-120°W and 70-85°N with an emphasis on identifying BSH patterns. Separate raw and anomaly MSLP circulation pattern (CP) classifications are compared in order to assess the spatial characteristics of the BSH and its monthly frequency changes during the melt season from 1979 to 2012. Analysis of both classifications shows clear advantages to using the anomaly approach in terms of assessing temporal and spatial changes, particularly in light of the documented recent atmospheric circulation changes that have been observed over the region. Associations between the June anomaly circulation pattern (ACP) 5, a +4 hPa BSH pattern situated between 155°W and 135°W, and June indices of atmospheric teleconnections such as the Arctic Dipole and Arctic Oscillation are statistically significant. There is also a statistically significant link to the downstream Greenland Blocking Index; suggesting that the BSH may be intricately related to climatic variability outside the analysed domain as well. Further, ACP 5 occurred nearly 3weeks more often during the melt season in recent massive Arctic Sea ice loss years (2007-2012) compared with the climatology (1979-2006). Recent increases in June ACP 5 frequencies account for a large proportion of this pattern's long-term frequency changes.
机译:Beaufort Sea High(BSH)的融化季节频率对西部北极气候具有深远影响,因此对该极地反气旋的年际时空监测非常重要。该手稿使用两个步骤的聚类程序介绍了两个自动化的天气气候分析,以对180-120°W和70-85°N的日平均海平面压力(MSLP)进行分类,重点是识别BSH模式。比较了单独的原始MSLP和异常MSLP循环模式(CP)分类,以评估BSH的空间特征及其在1979年至2012年融化季节的月度频率变化。对这两种分类的分析表明,使用BSP异常方法具有明显的优势。评估时间和空间变化的术语,尤其是考虑到已记录的该地区最近的大气环流变化。 6月异常环流模式(ACP)5,位于155°W和135°W之间的+4 hPa BSH模式与大气遥相关的6月指数(如北极偶极子和北极涛动)之间的关联具有统计学意义。与下游的格陵兰岛封锁指数也有统计上的显着联系;这表明,BSH可能与分析范围之外的气候变化也有复杂的关系。此外,与气候学(1979-2006年)相比,在最近的北极海冰大量丧失年份(2007-2012年),融化季节中ACP 5的发生频率要高出近3周。 6月ACP 5频率的最近增加占了该模式长期频率变化的很大一部分。

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